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Thiol-ene immobilisation of carbohydrates onto glass slides as a simple alternative to gold-thiol monolayers, amines or lipid binding

机译:将碳水化合物的硫醇-烯固定到载玻片上,作为金-硫醇单层膜,胺或脂质结合的简单替代方法

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Carbohydrate arrays are a vital tool in studying infection, probing the mechanisms of bacterial, viral and toxin adhesion and the development of new treatments, by mimicking the structure of the glycocalyx. Current methods rely on the formation of monolayers of carbohydrates that have been chemically modified with a linker to enable interaction with a functionalised surface. This includes amines, biotin, lipids or thiols. Thiol-addition to gold to form self-assembled monolayers is perhaps the simplest method for immobilisation as thiolated glycans are readily accessible from reducing carbohydrates in a single step, but are limited to gold surfaces. Here we have developed a quick and versatile methodology which enables the use of thiolated carbohydrates to be immobilised as monolayers directly onto acrylate-functional glass slides via a 'thiol-ene'/Michael-type reaction. By combining the ease of thiol chemistry with glass slides, which are compatible with microarray scanners this offers a cost effective, but also useful method to assemble arrays.
机译:碳水化合物阵列是研究感染,通过模拟糖萼的结构,探索细菌,病毒和毒素粘附机制以及开发新疗法的重要工具。当前的方法依赖于碳水化合物的单分子层的形成,该碳水化合物单分子层已经被连接物化学修饰以能够与功能化的表面相互作用。这包括胺,生物素,脂质或硫醇。将硫醇添加到金中以形成自组装单分子层可能是最简单的固定方法,因为硫醇化的聚糖可通过一步还原碳水化合物就很容易获得,但仅限于金表面。在这里,我们开发了一种快速且通用的方法,该方法能够通过“硫醇-烯” /迈克尔型反应将硫醇化的碳水化合物以单层形式直接固定在丙烯酸酯功能的玻璃载玻片上。通过将硫醇化学反应的简便性与载玻片相结合,载玻片与微阵列扫描仪兼容,这提供了一种经济高效但又有用的组装阵列方法。

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